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Erschienen in: Optical and Quantum Electronics 2/2023

01.02.2023

Design of photonic crystal fiber with large mode area for flat-top mode generation

verfasst von: Guangwei Lu, Shuang Liu, Dongyu Lv, Mengmeng Chen, Zuxing Zhang

Erschienen in: Optical and Quantum Electronics | Ausgabe 2/2023

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Abstract

We report a large mode area photonic crystal fiber with a flat-top mode field. The optical fiber has a multi-layer square structure with air holes and doped layer. A flat and top-hat-like mode intensity profile is provided through the reasonable design of the doped layer. The modal characteristics including effective mode area, dispersion, bending loss, confinement loss and field profile are investigated. The proposed fiber with a top-hat mode generation has potential applications in laser drilling, laser cleaning, imaging, spectroscopy, and so on.

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Literatur
Zurück zum Zitat Birks, T.A., Knight, J.C., Russell, P.: Endlessly single-mode photonic crystal fiber. Opt. Lett. 22, 961–963 (1997)ADSCrossRef Birks, T.A., Knight, J.C., Russell, P.: Endlessly single-mode photonic crystal fiber. Opt. Lett. 22, 961–963 (1997)ADSCrossRef
Zurück zum Zitat Blau, M., Dan, M.M.: Wavelength demultiplexer designs operating over multiple spatial modes of a rectangular waveguide. IEEE J. Sel. Top. Quantum Electron. 26, 1–11 (2019)CrossRef Blau, M., Dan, M.M.: Wavelength demultiplexer designs operating over multiple spatial modes of a rectangular waveguide. IEEE J. Sel. Top. Quantum Electron. 26, 1–11 (2019)CrossRef
Zurück zum Zitat Buettner, A., Zeitner, U.D.: Wave optical analysis of light-emitting diode beam shaping using microlens arrays. Opt. Eng. 41, 2393–2401 (2002)ADSCrossRef Buettner, A., Zeitner, U.D.: Wave optical analysis of light-emitting diode beam shaping using microlens arrays. Opt. Eng. 41, 2393–2401 (2002)ADSCrossRef
Zurück zum Zitat Chau, Y.F.: Design of a high-birefringence photonic crystal fiber using an asymmetric defect in the fiber core. In: International Conference on Electrical Engineering/Electronics, pp. 1–4. IEEE (2014) Chau, Y.F.: Design of a high-birefringence photonic crystal fiber using an asymmetric defect in the fiber core. In: International Conference on Electrical Engineering/Electronics, pp. 1–4. IEEE (2014)
Zurück zum Zitat Chen, M.Y.: Polarization and leakage properties of large-mode-area microstructured-core optical fibers. Opt. Express 15, 12498–12507(2007) ADSCrossRef Chen, M.Y.: Polarization and leakage properties of large-mode-area microstructured-core optical fibers. Opt. Express 15, 12498–12507(2007) ADSCrossRef
Zurück zum Zitat Chow, C.W., Huang, S.P., et al.: Square-core single-mode-fiber (SC-SMF) with high bending tolerance for data center networks. Opt. Commun. 349, 11–14 (2015)ADSCrossRef Chow, C.W., Huang, S.P., et al.: Square-core single-mode-fiber (SC-SMF) with high bending tolerance for data center networks. Opt. Commun. 349, 11–14 (2015)ADSCrossRef
Zurück zum Zitat Dickey, F.M., Holswade, H.C.: Laser beam shaping: theory and techniques. Vacuum 62, 390–391 (2001)CrossRef Dickey, F.M., Holswade, H.C.: Laser beam shaping: theory and techniques. Vacuum 62, 390–391 (2001)CrossRef
Zurück zum Zitat Dirk, N., Jan, R., Sebastian, W., et al.: Hyperbolic phase function used in a spatial light modulator for flat top focus generation. Opt. Lett. 44, 2169–2172 (2019)CrossRef Dirk, N., Jan, R., Sebastian, W., et al.: Hyperbolic phase function used in a spatial light modulator for flat top focus generation. Opt. Lett. 44, 2169–2172 (2019)CrossRef
Zurück zum Zitat Frieden, R.: Lossless conversion of a plane laser wave to a plane wave of uniform irradiance. Appl. Opt. 11, 1400–1403 (1965)ADSCrossRef Frieden, R.: Lossless conversion of a plane laser wave to a plane wave of uniform irradiance. Appl. Opt. 11, 1400–1403 (1965)ADSCrossRef
Zurück zum Zitat Haynes, J.R., Baggett, J.C., Monro, T.M., et al.: Square core jacketed air-clad fiber. Opt. Express 14, 10345–10350 (2006)ADSCrossRef Haynes, J.R., Baggett, J.C., Monro, T.M., et al.: Square core jacketed air-clad fiber. Opt. Express 14, 10345–10350 (2006)ADSCrossRef
Zurück zum Zitat Huseyin, A., Shyqyri, H.: Bending insensitive large mode area photonic crystal fiber. Optik Int. J. Light Electron Opt. 122, 1950–1956 (2011)CrossRef Huseyin, A., Shyqyri, H.: Bending insensitive large mode area photonic crystal fiber. Optik Int. J. Light Electron Opt. 122, 1950–1956 (2011)CrossRef
Zurück zum Zitat Kaneshima, K., Namihira, Y., Zou, H., et al.: Numerical investigation of octagonal photonic crystal fibers with strong confinement field. IEICE 89-C(6), 830–837 (2006) Kaneshima, K., Namihira, Y., Zou, H., et al.: Numerical investigation of octagonal photonic crystal fibers with strong confinement field. IEICE 89-C(6), 830–837 (2006)
Zurück zum Zitat Kang, H., Zhang, H., Ping, Y., et al.: Flat-topped beam output from a double-clad rectangular dielectric waveguide laser with a high-index inner cladding. Opt. Commun. 282, 2407–2412 (2009)ADSCrossRef Kang, H., Zhang, H., Ping, Y., et al.: Flat-topped beam output from a double-clad rectangular dielectric waveguide laser with a high-index inner cladding. Opt. Commun. 282, 2407–2412 (2009)ADSCrossRef
Zurück zum Zitat Kawsar, A., Monir, M., et al.: Design and numerical analysis of microstructured-core octagonal photonic crystal fiber for sensing applications. Sens. Bio-Sens. Res. 7, 1–6 (2016)CrossRef Kawsar, A., Monir, M., et al.: Design and numerical analysis of microstructured-core octagonal photonic crystal fiber for sensing applications. Sens. Bio-Sens. Res. 7, 1–6 (2016)CrossRef
Zurück zum Zitat Lu, X.Q., Zhou, Q.L., Qiu, J.R., et al.: Design guidelines and characteristics of beam-shaping microstructure optical fibers. Opt. Commun. 259, 636–639 (2006)ADSCrossRef Lu, X.Q., Zhou, Q.L., Qiu, J.R., et al.: Design guidelines and characteristics of beam-shaping microstructure optical fibers. Opt. Commun. 259, 636–639 (2006)ADSCrossRef
Zurück zum Zitat Martynkien, T., Olszewski, J., Szpulak, M., et al.: Experimental investigations of bending loss oscillations in large mode area photonic crystal fibers. Opt. Express 15, 13547–13556 (2007)ADSCrossRef Martynkien, T., Olszewski, J., Szpulak, M., et al.: Experimental investigations of bending loss oscillations in large mode area photonic crystal fibers. Opt. Express 15, 13547–13556 (2007)ADSCrossRef
Zurück zum Zitat Olszewski, J., Szpulak, M., Martynkien, T., et al.: Analytical evaluation of bending loss oscillations in photonic crystal fibers. Opt. Commun. 269, 261–270 (2007)ADSCrossRef Olszewski, J., Szpulak, M., Martynkien, T., et al.: Analytical evaluation of bending loss oscillations in photonic crystal fibers. Opt. Commun. 269, 261–270 (2007)ADSCrossRef
Zurück zum Zitat Peng, H.C., Su, H.S., Lu, H.H., et al.: Hybrid CATV/16-QAM OFDM in-building networks over SMF and GI-POF transport. Opt. Express 19, 9575–9581 (2011)ADSCrossRef Peng, H.C., Su, H.S., Lu, H.H., et al.: Hybrid CATV/16-QAM OFDM in-building networks over SMF and GI-POF transport. Opt. Express 19, 9575–9581 (2011)ADSCrossRef
Zurück zum Zitat Saitoh, K., Koshiba, M.: Single-polarization single-mode photonic crystal fibers. IEEE Photon. Technol. Lett. 15(10), 1384–1340 (2003)ADSCrossRef Saitoh, K., Koshiba, M.: Single-polarization single-mode photonic crystal fibers. IEEE Photon. Technol. Lett. 15(10), 1384–1340 (2003)ADSCrossRef
Zurück zum Zitat Saitoh, K., Murao, T., Rosa, L., et al.: Effective area limit of large-mode-area solid-core photonic bandgap fibers for fiber laser applications. Opt. Fiber Technol. 16, 409–418 (2010)ADSCrossRef Saitoh, K., Murao, T., Rosa, L., et al.: Effective area limit of large-mode-area solid-core photonic bandgap fibers for fiber laser applications. Opt. Fiber Technol. 16, 409–418 (2010)ADSCrossRef
Zurück zum Zitat Schreiber, T., Roser, F., et al.: Stress-induced single-polarization single-transverse mode photonic crystal fiber with low nonlinearity. Opt. Express 13, 7621–7630 (2005)ADSCrossRef Schreiber, T., Roser, F., et al.: Stress-induced single-polarization single-transverse mode photonic crystal fiber with low nonlinearity. Opt. Express 13, 7621–7630 (2005)ADSCrossRef
Zurück zum Zitat Song, N., Gao, F., Xu, X., et al.: Two-layer polarization-maintaining solid-core photonic crystal fiber. IEEE Photon. J. 10, 1–8 (2018)CrossRef Song, N., Gao, F., Xu, X., et al.: Two-layer polarization-maintaining solid-core photonic crystal fiber. IEEE Photon. J. 10, 1–8 (2018)CrossRef
Zurück zum Zitat Tsuchida, Y., Saitoh, K., Koshiba, M.: Design and characterization of single-mode holey fibers with low bending losses. Opt. Express 13, 4770–4779 (2005)ADSCrossRef Tsuchida, Y., Saitoh, K., Koshiba, M.: Design and characterization of single-mode holey fibers with low bending losses. Opt. Express 13, 4770–4779 (2005)ADSCrossRef
Zurück zum Zitat Tsuji, Y., Koshiba, M.: Complex modal analysis of curved optical waveguides using a full-vectorial finite element method with perfectly matched layer boundary conditions. Electromagnetics 24, 39–48 (2004)CrossRef Tsuji, Y., Koshiba, M.: Complex modal analysis of curved optical waveguides using a full-vectorial finite element method with perfectly matched layer boundary conditions. Electromagnetics 24, 39–48 (2004)CrossRef
Zurück zum Zitat Velsink, M.C., Lyu, Z., et al.: Comparison of round- and square-core fibers for sensing, imaging and spectroscopy. Opt. Express 29, 6523–6531 (2021)ADSCrossRef Velsink, M.C., Lyu, Z., et al.: Comparison of round- and square-core fibers for sensing, imaging and spectroscopy. Opt. Express 29, 6523–6531 (2021)ADSCrossRef
Zurück zum Zitat Wadsworth, W.J., Percival, R.M., Bouwmans, G., et al.: Very high numerical aperture fibers. IEEE Photon. Technol. Lett. 16, 843–845 (2004)ADSCrossRef Wadsworth, W.J., Percival, R.M., Bouwmans, G., et al.: Very high numerical aperture fibers. IEEE Photon. Technol. Lett. 16, 843–845 (2004)ADSCrossRef
Zurück zum Zitat Wang, C.C., Fan, Z., et al.: Photonic crystal fiber with a flattened fundamental mode for the fiber lasers. Opt. Commun. 282, 2232–2235 (2009)ADSCrossRef Wang, C.C., Fan, Z., et al.: Photonic crystal fiber with a flattened fundamental mode for the fiber lasers. Opt. Commun. 282, 2232–2235 (2009)ADSCrossRef
Zurück zum Zitat Xian, F., Wei, H.L., et al.: Single-mode tellurite glass holey fiber with extremely large mode area for infrared nonlinear applications. Opt. Exp. 16, 13651–13656 (2008)CrossRef Xian, F., Wei, H.L., et al.: Single-mode tellurite glass holey fiber with extremely large mode area for infrared nonlinear applications. Opt. Exp. 16, 13651–13656 (2008)CrossRef
Zurück zum Zitat Xing, Z., Wang, X., Lou, S., et al.: Large-mode-area all-solid anti-resonant fiber with single-mode operation for high-power fiber lasers. Opt. Lett. 46, 1908–1911 (2021)ADSCrossRef Xing, Z., Wang, X., Lou, S., et al.: Large-mode-area all-solid anti-resonant fiber with single-mode operation for high-power fiber lasers. Opt. Lett. 46, 1908–1911 (2021)ADSCrossRef
Zurück zum Zitat Xu, C., Ke, Y., Gu, C., et al.: All-fiber laser with flattop beam output using a few-mode fiber Bragg grating. Opt. Lett. 43, 1247–1250 (2018)ADSCrossRef Xu, C., Ke, Y., Gu, C., et al.: All-fiber laser with flattop beam output using a few-mode fiber Bragg grating. Opt. Lett. 43, 1247–1250 (2018)ADSCrossRef
Zurück zum Zitat Yu, X.: Laser beam shaping based on liquid–crystal spatial light modulator. Acta Opt. Sin. 5, 0514001–419 (2012) Yu, X.: Laser beam shaping based on liquid–crystal spatial light modulator. Acta Opt. Sin. 5, 0514001–419 (2012)
Zurück zum Zitat Zhang, X.B., Zhu, X., et al.: A hollow beam supercontinuum generation by the supermode superposition in a GeO2 doped triangular-core photonic crystal fiber. Opt. Express 20, 19799–19805 (2012)ADSCrossRef Zhang, X.B., Zhu, X., et al.: A hollow beam supercontinuum generation by the supermode superposition in a GeO2 doped triangular-core photonic crystal fiber. Opt. Express 20, 19799–19805 (2012)ADSCrossRef
Zurück zum Zitat Zhang, X.X., Li, S.G., Shuo, L.: Design of large mode area multicore photonic crystal fiber with a flat-top mode. Optik Int. J. Light Electron Opt. 124, 3273–3277 (2013)CrossRef Zhang, X.X., Li, S.G., Shuo, L.: Design of large mode area multicore photonic crystal fiber with a flat-top mode. Optik Int. J. Light Electron Opt. 124, 3273–3277 (2013)CrossRef
Zurück zum Zitat Zhou, G., Tsai, P., Wang, H., et al.: Wave-vector encoded nonlinear endo-microscopy. Opt. Lett. 45, 3713–3716 (2020)ADSCrossRef Zhou, G., Tsai, P., Wang, H., et al.: Wave-vector encoded nonlinear endo-microscopy. Opt. Lett. 45, 3713–3716 (2020)ADSCrossRef
Zurück zum Zitat Zhu, H., Fu, X., Fan, S., et al.: The conversion from a Gaussian-like beam to a flat-top beam in the laser hardening processing using a fiber coupled diode laser source. Opt. Laser Technol. 125, 106028 (2020)CrossRef Zhu, H., Fu, X., Fan, S., et al.: The conversion from a Gaussian-like beam to a flat-top beam in the laser hardening processing using a fiber coupled diode laser source. Opt. Laser Technol. 125, 106028 (2020)CrossRef
Metadaten
Titel
Design of photonic crystal fiber with large mode area for flat-top mode generation
verfasst von
Guangwei Lu
Shuang Liu
Dongyu Lv
Mengmeng Chen
Zuxing Zhang
Publikationsdatum
01.02.2023
Verlag
Springer US
Erschienen in
Optical and Quantum Electronics / Ausgabe 2/2023
Print ISSN: 0306-8919
Elektronische ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-022-04430-z

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